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Glucagon

177 Sentences | 10 Meanings

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Glucagon can be used to treat hypoglycemia in emergency situations.
The pancreas produces glucagon, along with insulin.
The glucagon receptor is a target for the treatment of type 2 diabetes.
In some rare cases, tumors of the pancreas can produce glucagon, leading to high blood sugar levels.
Glucagon stimulates the liver to convert stored glycogen into glucose.
People with diabetes may need to take medications that mimic the effects of glucagon.
Glucagon is a hormone that helps regulate blood sugar levels.
Patients with diabetes may need to use glucagon to raise their blood sugar levels in case of hypoglycemia.
Glucagon signals the liver to release glucose into the bloodstream, providing the body with an energy source during times of stress or fasting.
Glucagon signals the liver to break down stored glycogen into glucose.
Glucagon therapy may be necessary in cases where a person is unable to eat or drink and has low blood glucose levels.
Glucagon and insulin work together to maintain glucose homeostasis in the body.
The hormone glucagon is released in response to low blood sugar levels and is inhibited by high blood sugar levels.
Glucagon therapy can be used to treat conditions such as insulinoma, which results in excessive insulin production and low blood sugar levels.
The regulation of glucagon secretion is complex and involves multiple factors, including glucose, amino acids, and neural inputs.
Glucagon works by stimulating the liver to break down glycogen, a stored form of glucose.
Glucagon is a hormone that helps regulate blood sugar levels in the body.
The glucagon receptor is a potential therapeutic target for the treatment of type 2 diabetes.
In some cases, glucagon can be used to help diagnose insulinoma, a rare tumor of the pancreas.
Glucagon is the opposite of insulin, another hormone produced by the pancreas that lowers blood sugar levels.
Low levels of glucagon can cause a person's blood sugar levels to drop dangerously low.
The secretion of glucagon by alpha cells in the pancreas stimulates glycogenolysis and gluconeogenesis to raise blood glucose levels.
The pancreas releases glucagon into the bloodstream when blood sugar levels are too low.
Glucagon is often used to treat hypoglycemia, a condition where blood sugar levels are too low.
The body produces glucagon in response to low blood sugar levels.
The production of glucagon is regulated by the pancreas.
The hormone glucagon helps to maintain glucose homeostasis in the body.
The doctor used glucagon to raise the patient's blood sugar level.
Glucagon stimulates the liver to produce more glucose, which is needed for energy.
Glucagon is a peptide hormone that works in opposition to insulin to regulate blood glucose levels.
The doctor ordered glucagon to be given to the patient to prevent their blood sugar from dropping too low.
The doctor ordered an injection of glucagon to stimulate glycogenolysis.
Hypoglycemic patients may be given glucagon to raise their blood sugar levels.
The patient's blood sugar levels were raised by the glucagon injection.
The liver responds to glucagon by breaking down stored glycogen.
Glucagon is released by the pancreas in response to low blood sugar.
The nurse administered glucagon to the unconscious diabetic patient.
The patient's low blood sugar was quickly corrected with an injection of glucagon.
The diabetic patient carries an emergency glucagon kit in case of low blood sugar.
Researchers can use glucagon to study the role of various tissues and organs in glucose homeostasis.
The use of glucagon in metabolic studies has greatly contributed to our knowledge of glucose metabolism.
The effects of glucagon on glucose metabolism have been studied extensively.
Researchers often use glucagon to study the mechanisms behind diabetes.
Glucagon is a valuable research tool for studying the complex interplay between hormones and glucose levels.
The discovery of glucagon revolutionized our understanding of the hormonal control of glucose metabolism.
Researchers use glucagon to study the effects of various drugs on glucose metabolism.
The use of glucagon has led to a greater understanding of the physiological effects of insulin resistance.
The use of glucagon in metabolic research has led to important advances in the treatment of diabetes.
The new study will use glucagon to examine the effects of different diets on glucose metabolism.
Scientists can use glucagon to better understand how the body responds to changes in glucose levels.
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